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受矿山溢漏污染土壤在辅助自然修复II.植物条件下的微量元素有效性与植物生长

Trace element availability and plant growth in a mine-spill-contaminated soil under assisted natural remediation II. Plants.

作者信息

Pérez-de-Mora Alfredo, Madejón Engracia, Burgos Pilar, Cabrera Francisco

机构信息

Instituto de Recursos Naturales y Agrobiología, Av. Reina Mercedes 10, Po Box 1052 41080 Sevilla, Spain.

出版信息

Sci Total Environ. 2006 Jun 15;363(1-3):38-45. doi: 10.1016/j.scitotenv.2005.10.016. Epub 2006 Apr 5.

DOI:10.1016/j.scitotenv.2005.10.016
PMID:16600330
Abstract

In this second part, we evaluated the effects of different amendments on plant growth (Agrostis stolonifera L.), and trace element accumulation and removal by plants in a trace element (As, Cd, Cu, Pb and Zn) contaminated soil. Description of the various treatments is given in Part I of this work. The plants were grown for consecutive periods (2002, 2003, 2004), 5 months each and harvested twice in each period. Results showed that plant growth was enhanced and trace element concentrations in plant were reduced in SL, MWC, BC and LEO treatments in the first period. No significant differences were observed in subsequent periods. This seemed to be related with changes in soil pH. Removal of trace elements was higher in SL, MWC, BC and LEO treatments due to higher biomass production in the first period. In following years no significant differences between treatments were found. Data from Part I of this study were also used to compare trace element bioavailable concentrations extracted with 0.01 M CaCl2 and 0.05 M EDTA with trace elements in plant. We observed that 0.01 M CaCl2 was more suitable for determination of bioavailable concentrations and that extraction with EDTA overestimated biovailability of trace elements in amended treatments, especially in those where composts were added.

摘要

在第二部分中,我们评估了不同改良剂对植物生长(匍匐翦股颖)的影响,以及在受微量元素(砷、镉、铜、铅和锌)污染的土壤中植物对微量元素的积累和去除情况。本研究第一部分已对各种处理进行了描述。植物连续种植了几个时期(2002年、2003年、2004年),每个时期5个月,且在每个时期收获两次。结果表明,在第一个时期,污泥(SL)、城市污水污泥堆肥(MWC)、生物炭(BC)和低氧化态铁氧化物(LEO)处理中植物生长得到促进,植物中微量元素浓度降低。在随后的时期未观察到显著差异。这似乎与土壤pH值的变化有关。由于第一个时期生物量产量较高,污泥(SL)、城市污水污泥堆肥(MWC)、生物炭(BC)和低氧化态铁氧化物(LEO)处理中微量元素的去除量更高。在随后几年中,各处理之间未发现显著差异。本研究第一部分的数据也用于比较用0.01 M氯化钙和0.05 M乙二胺四乙酸(EDTA)提取的微量元素有效浓度与植物中的微量元素。我们观察到,0.01 M氯化钙更适合用于测定有效浓度,并且用EDTA提取会高估改良处理中微量元素的生物有效性,尤其是在添加了堆肥的处理中。

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